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在海洋测深中,由于波浪和潮汐的影响,调查船或无人船所测量的瞬时水深不能直接作为海图水深。本文提出了一种新型的无人船海洋水深测量技术,以评估搭载RTK和单波束测深仪的无人船用于海洋水深测量的潜能。首先,使用无人船所搭载RTK的厘米级精度高程数据,通过低通滤波剔除波浪信息,而获得海平面高程。然后,基于潮汐表和无人船海平面高程,构建了一种参考椭球面和海图的两个基准面之差的获取方法;在常规的海洋调查中,该基准面差通常需要由长期的验潮获得。最后,利用海图基准和无人船测量的瞬时水深的转换关系,计算出海图水深。在海南省蜈支洲岛周边海域,利用自研发的无人船“USBV”开展了相关海上实验,以验证所提出的技术方法。实验结果验证了该无人船海洋水深测量技术。 相似文献
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目的:探讨中医药治疗原发性肝癌的用药规律。方法:检索中国期刊全文数据库(CNKI)、中文科技期刊数据库(VIP)、中国学术期刊数据库(万方数据)等数据库,收集中医药治疗原发性肝癌的文献。使用SPSS 21.0软件,采用频次和聚类分析对中药处方进行数据挖掘。结果:共纳入有效文献108篇,含处方113首,其中涉及中药176味,频次1357次,使用频次排名前5位的药物依次为黄芪、茯苓、党参、白术、白花蛇舌草。中药用药类别依次为补虚药、清热药、理气药、活血化瘀药、利水渗湿药。聚类分析显示补脾益气、活血化瘀、清热解毒是临床上治疗原发性肝癌的常用法则。结论:益气健脾、清热解毒、活血化瘀是治疗原发性肝癌的基本法则;黄芪、党参、白术、白花蛇舌草、半枝莲、白芍、柴胡是治疗原发性肝癌的常用药物。 相似文献
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基于空间分布与统计特性的海面远景目标检测方法 总被引:1,自引:0,他引:1
海面运动载体获取的可见光图像中,远景目标成像面积小、特征不显著、信噪比较低等特点增大了目标检测难度,现有方法难以同时取得较高的查全率与较低的虚警率。作者根据目标在图像中的空间分布与统计特性,提出了一种海面远景目标检测方法。首先结合直线特征与界线特征实现海天线检测,然后根据拉伊达准则实现明度图像中疑似目标像素与背景像素的分离,得到二值图像,最后对二值图像进行形态学处理,并根据疑似目标区域与海天线的位置关系,排除干扰区域。测试结果表明:所提方法具有较高查全率与较低虚警率,且实时性和鲁棒性较强。 相似文献
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新疆克拉玛依市生态敏感性研究(英文) 总被引:1,自引:1,他引:1
Karamay City is a typical mining city, relying on oilfield exploration and development. After 60 years of construction and development, Karamay has become the first large oilfield and an important base of the national petroleum and petrochemical industry in China. Based on spatial analysis, and Geographic Information Systems (GIS) grid computing and overlay techniques, whilst considering the effect of oilfield development and aimed at the ecological problems of Karamay City in the Xinjiang Uygur Autonomous Region of China, we conducted research on the spatial characteristics of the comprehensive ecological sensitivity of Karamay. The ecological problems of natural environment evolution include soil erosion, land deserti-fication, soil salinization, and biodiversity reduction. The most significant disturbance factor from the activities of humans in this area is oilfield exploitation. This study carries out an analysis of single factor ecological problem sensitivity and integrated ecological sensitivity. The results of the research are as follows: (1) Soil erosion is relatively sensitive, especially in Karamay district, Dushanzi district, north of Urho district and west of Baijiantan district, which is mainly a result of the vertical dropping slopes, serious rainfall erosion and the distribution of scattered woodland. (2) The main types of land desertification are represented by high and moderate grade sensitivities, and high and extremely high sensitive areas are distributed in the intersection of Karamay and Baijiantan districts. This is due to evaporation exceeding rainfall in these areas, and the soil mainly consists of sand and is seldom covered by vegetation. (3) The soil salinizatiion sensitivity grades are mainly moderate, high and extremely high. The highly sensitive areas are mainly distributed in southeast of Baijiantan district, north and east of Karamay district and east of Urho district. The primary causes are evaporation exceeding rainfall and extreme human activities. (4) The main types of biodiversity sensitivity are light and moderate grade. Highly sensitive areas are located in the east and south of Karamay district, north of the Baiyang River basin and parts of the wetland areas. (5) Oil fields development areas are highly ecologically sensitive, which are located in the northern oilfields of Urho district, western oilfields of Baijiantan district, northwestern oilfields of Karamay district and central oilfields of Dushanzi district. (6) The main types of integrated ecological sen-sitivity are high and moderate. The high and extremely highly sensitive areas are located in the central and northern parts of Karamay district, and southwest of Baijiantan district. The evaluation results will provide guidance for the future planning and development, the protection of the ecological environment and the realization of harmonious social, economic, and ecological development in Karamay City. 相似文献
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针对污染物对包气带环境的影响问题,本文采用数值模拟方法,以某电厂COD污染物作为预测因子,由Hydrus-1D软件建立水文地质模型,进行了包气带中污染物运移数值模拟研究,模拟效果反映出污染物运移的规律,结论是:污染物排放简化为连续恒定排放的点源工况下,污染物在包气带下渗过程中,浓度随时间不断减低。距离入渗点越近的位置,污染物浓度越高;距离越远的位置,污染物浓度越低。在土壤纵剖面上,随着深度增大,污染物浓度变化速率逐渐增加。 相似文献
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